Bulk cell density and Wnt/TGFbeta signalling regulate mesendodermal patterning of human pluripotent stem cells

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dc.identifier.uri http://dx.doi.org/10.15488/1192
dc.identifier.uri http://www.repo.uni-hannover.de/handle/123456789/1216
dc.contributor.author Kempf, Henning
dc.contributor.author Olmer, Ruth
dc.contributor.author Haase, Alexandra
dc.contributor.author Franke, Annika
dc.contributor.author Bolesani, Emiliano
dc.contributor.author Schwanke, Kristin
dc.contributor.author Robles-Diaz, Diana
dc.contributor.author Coffee, Michelle
dc.contributor.author Goehring, Gudrun
dc.contributor.author Draeger, Gerald
dc.contributor.author Poetz, Oliver
dc.contributor.author Joos, Thomas
dc.contributor.author Martinez-Hackert, Erik
dc.contributor.author Haverich, Axel
dc.contributor.author Buettner, Falk F.R.
dc.date.accessioned 2017-03-02T14:05:13Z
dc.date.available 2017-03-02T14:05:13Z
dc.date.issued 2016
dc.identifier.citation Kempf, Henning; Olmer, Ruth; Haase, Alexandra; Franke, Annika; Bolesani, Emiliano et al.: Bulk cell density and Wnt/TGFbeta signalling regulate mesendodermal patterning of human pluripotent stem cells. In: Nature Communications 7 (2016), 13602. DOI: https://doi.org/10.1038/ncomms13602
dc.description.abstract In vitro differentiation of human pluripotent stem cells (hPSCs) recapitulates early aspects of human embryogenesis, but the underlying processes are poorly understood and controlled. Here we show that modulating the bulk cell density (BCD: cell number per culture volume) deterministically alters anteroposterior patterning of primitive streak (PS)-like priming. The BCD in conjunction with the chemical WNT pathway activator CHIR99021 results in distinct paracrine microenvironments codifying hPSCs towards definitive endoderm, precardiac or presomitic mesoderm within the first 24 h of differentiation, respectively. Global gene expression and secretome analysis reveals that TGFß superfamily members, antagonist of Nodal signalling LEFTY1 and CER1, are paracrine determinants restricting PS progression. These data result in a tangible model disclosing how hPSC-released factors deflect CHIR99021-induced lineage commitment over time. By demonstrating a decisive, functional role of the BCD, we show its utility as a method to control lineage-specific differentiation. Furthermore, these findings have profound consequences for inter-experimental comparability, reproducibility, bioprocess optimization and scale-up. eng
dc.description.sponsorship DFG/REBIRTH
dc.description.sponsorship DFG/EXC62/1
dc.description.sponsorship DFG/ZW 64/4-1
dc.description.sponsorship DFG/MA 2331/16-1
dc.description.sponsorship BMBF/13N12606
dc.description.sponsorship BMBF/StemBANCC
dc.description.sponsorship EU H2020/668724
dc.language.iso eng
dc.publisher London : Nature Publishing Group
dc.relation.ispartofseries Nature Communications 7 (2016)
dc.rights CC BY 4.0 Unported
dc.rights.uri https://creativecommons.org/licenses/by/4.0/
dc.subject scalable suspension-culture eng
dc.subject large-scale production eng
dc.subject definitive endoderm eng
dc.subject primitive streak eng
dc.subject cardiomyogenic differentiation eng
dc.subject efficient differentiation eng
dc.subject cardiac differentiation eng
dc.subject nodal antagonists eng
dc.subject beta-catenin eng
dc.subject mouse embryo eng
dc.subject.ddc 500 | Naturwissenschaften ger
dc.title Bulk cell density and Wnt/TGFbeta signalling regulate mesendodermal patterning of human pluripotent stem cells eng
dc.type Article
dc.type Text
dc.relation.issn 2041-1723
dc.relation.doi https://doi.org/10.1038/ncomms13602
dc.bibliographicCitation.volume 7
dc.bibliographicCitation.firstPage 13602
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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